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Subjects

Chemistry

7: Abnormal Molecular Mass

असामान्य आणविक द्रव्यमान

In this Class 12 Chemistry topic from Chapter 01: Solutions, students learn why the experimentally determined molecular mass of a solute may differ from its expected value. The discussion connects abnormal molecular mass with the association or dissociation of solute particles in solution and explains how these changes affect colligative properties. Students also explore the van’t Hoff factor and use it to interpret and calculate corrected molar masses in solution-based problems.

Practice questions

01 If the mass ratio of solute to solvent is 2:3, what is the mass percentage of solute?

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02 If a solute dissociates during molar-mass determination, how is the observed molar mass generally found?

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03 Assuming complete dissociation, what is the van’t Hoff factor of BaCl₂?

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04 If A₃B undergoes complete dissociation, what is the ideal van’t Hoff factor?

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05 Why is the van’t Hoff factor usually taken as 1 for sugar dissolved in water?

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06 In a question on abnormal molar mass, what should usually be decided first?

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07 What is the van’t Hoff factor for SrCl₂ on complete dissociation?

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08 What is the ideal van’t Hoff factor for NH₄Cl on complete dissociation?

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09 If the osmotic pressure of a solution is 1.8 times the normally expected value, what is its van’t Hoff factor?

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10 For a solute, elevation in boiling point is lower than the normal expected value. What is the most likely reason?

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11 The relative lowering of vapour pressure of a non-volatile solute is lower than expected. Which conclusion is most correct?

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12 A student finds that the apparent molar mass of a salt is less than its true molar mass. Which conclusion can safely be drawn?

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13 For a solution, i = 0.70. Which statement is correct?

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14 If a solute has i = 1, what is the most appropriate meaning in the context of abnormal molar mass?

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15 A solution has i = 0.90. Which explanation is most appropriate?

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16 For a solute with i = 1.2, if it dissociates into three ions, what is the degree of dissociation?

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17 A solute has i = 2.25. If it is of the AB3 type, what is the ratio of apparent molar mass to true molar mass?

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18 An AB2 salt undergoes 55% dissociation. What is its van’t Hoff factor?

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19 A solute forms trimers completely. What is the ratio of apparent molar mass to true molar mass?

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20 A colligative experiment gives an apparent molar mass of 300 g mol−1, while the true molar mass is 150 g mol−1. Which conclusion is most appropriate?

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21 An MCl₃ salt has i = 2.8. What is its apparent molar mass compared with its true molar mass?

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22 If the apparent molar mass is 60% greater than the true molar mass, what is the approximate value of i?

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23 An XY electrolyte has i = 1.72. If its formal concentration is 0.25 M, what is the effective particle concentration?

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24 If a solute has i = 0.72 and true molar mass 144 g mol⁻¹, what is its apparent molar mass?

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25 For a 0.12 m solution, the normal freezing-point depression is 0.24 K and the observed depression is 0.60 K. What is i?

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